Markovic Dejan L, Petrovic Bojan B, Peric Tamara O, Trisic Dijana, Kojic Sanja, Kuljic Bozidar L, Stojanovic Goran
Oral Health Prev Dent. 2019;17(4):349-355. doi: 10.3290/j.ohpd.a42689.
The objective was to assess the effect of fissure depth and enamel surface preparation protocols on penetration of resin-based, giomer and glass-ionomer fissure sealants.
Ninety extracted third molars were assigned into three groups according to the material used. All three groups were subsequently divided depending on tooth preparation: no pretreatment or surface preparation with 10% polyacrylic acid, 37% phosphoric acid, or self-etching adhesive. In addition, Er,Cr:YSGG laser or air abrasion were employed in all subgroups. The penetration was evaluated using scanning electron microscopy.
The groups that were pretreated with an appropriate acid resulted in superior penetration of glass-ionomer and resin-based sealants when compared with other surface preparation protocols (p < 0.05). The exception was teeth treated with both air abrasion and acid etching. Both preparation protocol and fissure depth significantly affected the sealant penetration (p < 0.05), but fissure depth had a greater impact on fissure penetration than did enamel surface pretreatment.
All investigated materials exhibit similar properties regarding sealant penetration. Penetration of a fissure sealant is significantly influenced by the fissure depth. In regard to enamel surface preparation protocol, a pretreatment with phosphoric acid in resin-based and polyacrylic acid in glass-ionomers appears to be essential in obtaining the adequate penetration of a sealing material.
评估裂隙深度和釉质表面处理方案对树脂基窝沟封闭剂、聚酸改性复合树脂(giomer)和玻璃离子窝沟封闭剂渗透的影响。
根据使用的材料将90颗拔除的第三磨牙分为三组。随后,根据牙齿处理方式将所有三组再进行划分:不进行预处理,或用10%聚丙烯酸、37%磷酸或自酸蚀粘结剂进行表面处理。此外,在所有亚组中均采用铒铬:钇-钪-镓石榴石(Er,Cr:YSGG)激光或空气喷砂处理。使用扫描电子显微镜评估渗透情况。
与其他表面处理方案相比,用适当的酸进行预处理的组中,玻璃离子和树脂基封闭剂的渗透效果更佳(p < 0.05)。空气喷砂和酸蚀联合处理的牙齿除外。处理方案和裂隙深度均显著影响封闭剂的渗透(p < 0.05),但裂隙深度对裂隙渗透的影响大于釉质表面预处理。
就封闭剂渗透而言,所有研究材料均表现出相似的性能。窝沟封闭剂的渗透受裂隙深度显著影响。关于釉质表面处理方案,树脂基材料用磷酸预处理以及玻璃离子材料用聚丙烯酸预处理对于获得密封材料的充分渗透似乎至关重要。